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Published on: January 11, 2014
Natural history of infantile-onset spinal muscular atrophy
Stephen J Kolb1,2, Christopher S Coffey3, Jon W Yankey3
1Department of Neurology, The Ohio State University Wexner Medical Center, Columbus, OH.
Insights
Infantile spinal muscular atrophy (SMA) is a severe genetic condition. This study tracked motor function and biomarkers in infants, identifying key measures for clinical trials and predicting outcomes.
Area of Science:
- Neurology
- Genetics
- Pediatrics
Background:
- Infantile-onset spinal muscular atrophy (SMA) is a leading genetic cause of infant mortality, often fatal before age two.
- Effective clinical trials for infantile SMA necessitate a clear understanding of disease progression and reliable biomarkers for outcome prediction.
Purpose of the Study:
- To characterize the natural history of infantile-onset SMA.
- To identify meaningful clinical outcome measures and biomarkers for therapeutic development and outcome prediction in infantile SMA.
Main Methods:
- A prospective, longitudinal, multicenter natural history study enrolled 26 SMA infants and 27 controls (<6 months old).
- Motor function scales (TIMPSI, CHOP-INTEND, AIMS) and physiological/molecular biomarkers were assessed up to 24 months.
- Progression, correlations between motor function and biomarkers, and hazard ratios were analyzed.
Main Results:
- SMA infants showed rapid declines in motor function scores (MFS) and compound muscle action potential (CMAP), contrasting with rapid MFS increases in controls.
- Significant correlations were found between TIMPSI and CMAP in SMA infants.
- TIMPSI at the initial visit predicted the combined endpoint of death or permanent invasive ventilation in SMA infants.
Conclusions:
- The study provides crucial data on outcome measures for infantile-onset SMA clinical trials.
- The NeuroNEXT network demonstrated its capability to generate real-world, prospective natural history data.
- These findings can accelerate drug development for rare diseases like SMA.
Objective:
Infantile-onset spinal muscular atrophy (SMA) is the most common genetic cause of infant mortality, typically resulting in death preceding age 2. Clinical trials in this population require an understanding of disease progression and identification of meaningful biomarkers to hasten therapeutic development and predict outcomes.
Methods:
A longitudinal, multicenter, prospective natural history study enrolled 26 SMA infants and 27 control infants aged <6 months. Recruitment occurred at 14 centers over 21 months within the NINDS-sponsored NeuroNEXT (National Network for Excellence in Neuroscience Clinical Trials) Network. Infant motor function scales (Test of Infant Motor Performance Screening Items [TIMPSI], The Children's Hospital of Philadelphia Infant Test for Neuromuscular Disorders, and Alberta Infant Motor Score) and putative physiological and molecular biomarkers were assessed preceding age 6 months and at 6, 9, 12, 18, and 24 months with progression, correlations between motor function and biomarkers, and hazard ratios analyzed.
Results:
Motor function scores (MFS) and compound muscle action potential (CMAP) decreased rapidly in SMA infants, whereas MFS in all healthy infants rapidly increased. Correlations were identified between TIMPSI and CMAP in SMA infants. TIMPSI at first study visit was associated with risk of combined endpoint of death or permanent invasive ventilation in SMA infants. Post-hoc analysis of survival to combined endpoint in SMA infants with 2 copies of SMN2 indicated a median age of 8 months at death (95% confidence interval, 6, 17).
Interpretation:
These data of SMA and control outcome measures delineates meaningful change in clinical trials in infantile-onset SMA. The power and utility of NeuroNEXT to provide "real-world," prospective natural history data sets to accelerate public and private drug development programs for rare disease is demonstrated. Ann Neurol 2017;82:883-891.
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